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Caveolae and Lipid Rafts in Endothelium: Valuable Organelles for Multiple Functions

机译:内皮内的Caveolae和脂质筏:多功能的有价值的细胞器

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摘要

Caveolae are flask-shaped invaginations of the plasma membrane found in numerous cell types and are particularly abundant in endothelial cells and adipocytes. The lipid composition of caveolae largely matches that of lipid rafts microdomains that are particularly enriched in cholesterol, sphingomyelin, glycosphingolipids, and saturated fatty acids. Unlike lipid rafts, whose existence remains quite elusive in living cells, caveolae can be clearly distinguished by electron microscope. Despite their similar composition and the sharing of some functions, lipid rafts appear more heterogeneous in terms of size and are more dynamic than caveolae. Following the discovery of caveolin-1, the first molecular marker as well as the unique scaffolding protein of caveolae, we have witnessed a remarkable increase in studies aimed at investigating the role of these organelles in cell functions and human disease. The goal of this review is to discuss the most recent studies related to the role of caveolae and caveolins in endothelial cells. We first recapitulate the major embryological processes leading to the formation of the vascular tree. We next discuss the contribution of caveolins and cavins to membrane biogenesis and cell response to extracellular stimuli. We also address how caveolae and caveolins control endothelial cell metabolism, a central mechanism involved in migration proliferation and angiogenesis. Finally, as regards the emergency caused by COVID-19, we propose to study the caveolar platform as a potential target to block virus entry into endothelial cells.
机译:Caveolae是在许多细胞类型中发现的血浆膜的烧瓶形状膜,并且在内皮细胞和脂肪细胞中特别丰富。 Caveolae的脂质组合物在很大程度上与特别富含胆固醇,鞘磷脂,糖磷脂和饱和脂肪酸特别富集的脂质筏微摩擦的脂质组合物。与脂质筏不同,其存在在活细胞中仍然难以捉摸,Caveolae可以通过电子显微镜清楚地区分。尽管他们类似的组成和一些功能的共享,但脂质筏在尺寸方面看起来更异,并且比Caveolae更具动态。在发现Caveolin-1之后,第一个分子标记以及Caveolae的独特支架蛋白,我们目睹了旨在研究这些细胞器在细胞功能和人类疾病中的作用的研究的显着增加。本综述的目标是讨论与Caveolae和Cavolins在内皮细胞中的作用有关的最新研究。我们首先概括了主要的胚胎学过程,导致血管树的形成。我们接下来讨论Caveolins和Cavins对细胞外刺激的膜生物发生和细胞反应的贡献。我们还解决了Caveolae和Caveolins对内皮细胞代谢的方式,一种涉及迁移增殖和血管生成的中央机制。最后,关于Covid-19引起的紧急情况,我们建议将Caveolar平台作为潜在的靶标来阻止病毒进入内皮细胞。

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